Li Xiang, Ye Tengling, Liu Wenfei, Meng Ge, Guo Wenxin, Grigoriev Sergey A, He Dongqing, Sun Chuanyu
Department of Applied Chemistry, School of Chemistry and Chemical Engineering, Harbin Institute of Technology, Harbin 150001, China.
Yantai Research Institute, Harbin Engineering University, Yantai 264003, China.
Polymers (Basel). 2025 Aug 23;17(17):2287. doi: 10.3390/polym17172287.
Proton-exchange membranes (PEMs) are the pivotal components of vanadium redox flow batteries (VRFBs) and play a critical role in the comprehensive output performance of VRFB systems. Currently, the most widely commercialized membranes are Nafion series membranes produced by DuPont, Wilmington, DE, USA, but the high vanadium permeability and cost hinder their large-scale promotion. Hence, there is an active demand for developing a low-cost, high-performance, and energy-efficient PEM to promote the commercialization of VRFB systems. In this paper, sulfonated poly(ether ether ketone) (SPEEK) as matrix and zirconia nanoparticles as inorganic filler were used for composite modification to prepare a series of SPEEK-ZrO organic-inorganic hybrid membranes for VRFBs. The thickness of these membranes was 50-100 μm. Compared with Nafion 115 (thickness 128 μm), composite membranes demonstrated obvious cost advantages. The results showed that the SP-Z-X series membranes had higher water uptake (53.26-71.1%) and proton conductivity (0.11-0.24 S cm). SP-Z-5 displayed the best comprehensive output performance at 200 mA cm (CE: 99.01%, VE: 81.95%, EE: 81.11%). These hybrid membranes are very cost-effective and exhibit high potential for application in VRFB applications, and are expected to lead to the industrial application of VRFBs on a large scale.
质子交换膜(PEMs)是全钒液流电池(VRFBs)的关键组件,在VRFB系统的综合输出性能中起着至关重要的作用。目前,商业化最广泛的膜是美国特拉华州威尔明顿市杜邦公司生产的Nafion系列膜,但钒的高渗透率和成本阻碍了它们的大规模推广。因此,迫切需要开发一种低成本、高性能且节能的PEM,以推动VRFB系统的商业化。本文以磺化聚醚醚酮(SPEEK)为基体,氧化锆纳米颗粒为无机填料进行复合改性,制备了一系列用于VRFBs的SPEEK-ZrO有机-无机杂化膜。这些膜的厚度为50-100μm。与Nafion 115(厚度128μm)相比,复合膜具有明显的成本优势。结果表明,SP-Z-X系列膜具有更高的吸水率(53.26-71.1%)和质子传导率(0.11-0.24 S cm)。在200 mA cm下,SP-Z-5表现出最佳的综合输出性能(CE:99.01%,VE:81.95%,EE:81.11%)。这些杂化膜具有很高的性价比,在VRFB应用中具有很高的应用潜力,有望推动VRFBs的大规模工业应用。